AllanP. High-frequency percussive ventilation: pnuemotachograph validation and tidal volume analysis. Respir Care, 2010; 55(6):734–740.
2.
LucangeloU, AntonagliaV, ZinWA, FontanesiL, PeratonerA, BirdFM, GulloA. Effects of mechanical load on flow, volume and pressure delivered by high-frequency percussive ventilation. Respir Physiol Neurobiol, 2004; 142(1):81–91.
3.
Allardet-ServentJ, BregeonF, DelpierreS, SteinbergJ, PayanM, RavailheS, PapazianL. High-frequency percussive ventilation attenuates lung injury in a rabbit model of gastric juice aspiration. Intensive Care Med, 2007; 34(1):91–100.
4.
BougatefA, CasteelsA, CoolsF, De WolfD, FoubertL. High frequency percussive ventilation: principle and fifteen years of experience in preterm infants with respiratory distress syndrome. Cuidados Respiratorios. J Respir Care Appl Technol, 2007; 2(Suppl 1):39–50.
5.
MlcakRP, SumanOE, SanfordAP, HerndonDN. Comparison of high frequency percussive ventilation and conventional. Journal of Burns and Surgical Wound Care, 2002; 1(1)19:1–6.
6.
ReyburnB, LiM, MetcalfDB, KrollNJ, AlvordJ, WintA, DahlMJ, et al. Nasal ventilation alters mesenchymal cell turnover and improves alveolarization in preterm lambs. Am J Respir Crit Care Med, 2008; 178(4):407–418.
7.
ChungKK, WolfSE, RenzEM, AllanPF, AdenJK, MerrillGA, et al. High-frequency percussive ventilation and low tidal volume ventilation in burns: a randomized controlled trial. Crit Care Med, 2010; 38(10):1970–1977. DOI: 10.1097/CCM.0b013e3181eb9d0b.
8.
LucangeloU, AntonagliaV, ZinWA, BerlotG, FontanesiL, PeratonerA, et al. Mechanical loads modulate tidal volume and lung washout during high-frequency percussive ventilation. Respir Physiol Neurobiol, 2006; 150(1):44–51.
9.
EsanA, HessDR, GeorgeL, RaoofS, SesslerCN. Severe hypoxemic respiratory failure. Part I: ventilatory strategies. Chest, 2010; 137(5):1203–1216.